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PERFORMANCE EVALUATION OF GLOBAL OPEN ETHERNET (GOE) PROTOTYPE SYSTEM

机译:全球开放式以太网(GOE)原型系统的性能评估

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This paper presents hardware and software implementation of a prototype system for Global Open Ethernet (GOE) as a cost-effective next generation Ethernet-based VPN solution. Various kinds of performance evaluation results for this prototype are also discussed. Three main approaches have been proposed to build a cost-effective VPN solution: (ⅰ) Resilient Packet Ring (RPR), (ⅱ) Ethernet over MPLS (EoMPLS); (ⅱ) VLAN-tag (802.1Q) stacking (Q-in-Q). These technologies have the following drawbacks. RPR approach provides fast protection/restoration of Ethernet frames only in a ring topology network, which is significant topology constraint. EoMPLS and Q-in-Q do not have any topology constraints, which makes them easy to deploy in the current networks. While EoMPLS provides such functionalities as fast network provisioning, failure recovery, VPN, and traffic engineering with MPLS tunneling, it requires expensive router platforms and incurs an overhead of MPLS VPN management. Q-in-Q allows user's VLAN-tagged frames to be transported with provider VLAN tag to solve the inherent scalability limitation of Ethernet networks cost-effectively, but it does not support private MAC addresses for user LANs and lacks MPLS features. It also incurs an overhead of VPN management. The proposed GOE system is designed to solve VPN management problems of both approaches with MPLS VPN functionality at a low cost of Ethernet-based solution. The basic components of GOE are: (ⅰ) a novel GOE tag ("routable", "extensible" and "scalable" tag) and a highspeed switching module utilizing the tag; (ⅱ) MAC address learning module over GOE-tagged network for VPLS service; (ⅲ) routing and protection module via a novel Per-Destination Multiple Rapid Spanning Tree Protocol (PD-MRSTP); (ⅳ) a novel network In-Service Reconfiguration Protocol (ISR) via extended PD-MRSTP. We have developed a GOE prototype system consisting of a GOE core switch and a GOE edge switch in the network. We examined the software interoperability with legacy Ethernet switches. We also evaluated hardware performance of (ⅰ) and software performance of (ⅲ) and (ⅳ) of this system. The performance evaluation results prove that the proposed GOE system can be used as a cost-effective high-performance Ethernet-based VPN solution.
机译:本文介绍了全球开放式以太网(GOE)原型系统的硬件和软件实现,该系统是一种经济高效的下一代基于以太网的VPN解决方案。还讨论了该原型的各种性能评估结果。已经提出了三种主要方法来构建具有成本效益的VPN解决方案:(ⅰ)弹性分组环(RPR),(ⅱ)MPLS上的以太网(EoMPLS); (ⅱ)VLAN标签(802.1Q)堆叠(Q-in-Q)。这些技术具有以下缺点。 RPR方法仅在环形拓扑网络中提供了快速的以太网帧保护/恢复,这是重要的拓扑约束。 EoMPLS和Qin-Q没有任何拓扑约束,这使得它们易于在当前网络中部署。虽然EoMPLS通过MPLS隧道提供快速的网络供应,故障恢复,VPN和流量工程设计等功能,但它需要昂贵的路由器平台,并且会产生MPLS VPN管理的开销。 Q-in-Q允许使用带有提供商VLAN标签的用户VLAN标记帧来传输,以经济有效地解决以太网固有的可扩展性限制,但是它不支持用户LAN的专用MAC地址,并且缺少MPLS功能。这也会招致VPN管理的开销。提出的GOE系统旨在以低成本的基于以太网的解决方案来解决具有MPLS VPN功能的两种方法的VPN管理问题。 GOE的基本组件是:(ⅰ)一个新颖的GOE标签(“可路由”,“可扩展”和“可扩展”标签)和一个利用该标签的高速交换模块; (ⅱ)通过GOE标签网络的MAC地址学习模块,用于VPLS服务; (ⅲ)通过新颖的基于目的地的多快速生成树协议(PD-MRSTP)进行路由和保护; (ⅳ)通过扩展的PD-MRSTP的新型网络服务中重新配置协议(ISR)。我们已经开发了一个GOE原型系统,该系统由网络中的GOE核心交换机和GOE边缘交换机组成。我们检查了软件与旧版以太网交换机的互操作性。我们还评估了该系统的硬件性能(ⅰ)和软件性能(ⅲ)和(ⅳ)。性能评估结果证明,所提出的GOE系统可以用作具有成本效益的高性能基于以太网的VPN解决方案。

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